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In the presence of an event-synchronisation error a subset of STAs in a cluster may be silent while the others are transmitting.
Before transmitting the useful data a synchronisation phase is executed to reduce the residual synchronisation error of one sample as described above.
The symbol timing synchronisation error may cause interblock interference (IBI) and the frequency synchronisation error is one of the sources of intercarrier interference (ICI).
The residual synchronisation error of one sample has to be accounted for.
Results show that when compared with the ML method, the time-domain approach improves detection performance even in the presence of synchronisation error caused by carrier frequency offset.
The synchronisation error between the left and right stereo images is less than 100 ps and this has been verified both electrically and optically.
Using the block error rate (BLER) performance metric, simulations evaluate the detection performance of the ML and the time-domain estimation methods in the presence of synchronisation error due to carrier frequency offset (CFO).
As it is expected, an event-synchronisation error leads to throughput loss and the aggregate throughput decreases when increases.
In this section, we will consider a general and more realistic case, where members of each cluster may suffer from synchronisation errors with a certain probability.
We begin the analysis by considering a symmetric scenario where all clusters suffer from synchronisation errors in the same way.
In this section, we consider an asymmetric scenario where only one cluster suffers from synchronisation errors.
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